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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Water vapor self‐continuum absorption in near‐infrared windows derived from laboratory measurements
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Water vapor self‐continuum absorption in near‐infrared windows derived from laboratory measurements

机译:水蒸气自我检测连续吸收近红外窗口来自实验室测量

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In most near‐infrared atmospheric windows, absorption of solar radiation is dominated by the water vapor self‐continuum, and yet there is a paucity of measurements in these windows. We report new laboratory measurements of the self‐continuum absorption at temperatures between 293 and 472 K and pressures from 0.015 to 5 atm in four near‐infrared windows between 1 and 4 mm (10000–2500 cm~(-1)); the measurements are made over a wider range of wavenumbers, temperatures, and pressures than any previous measurements. They show that the self‐continuum in these windows is typically one order of magnitude stronger than given in representations of the continuum widely used in climate and weather prediction models. These results are also not consistent with current theories attributing the self‐continuum within windows to the far wings of strong spectral lines in the nearby water vapor absorption bands; we suggest that they are more consistent with water dimers being the major contributor to the continuum. The calculated global average clear‐sky atmospheric absorption of solar radiation is increased by -0.75 W/m~2 (which is about 1% of the total clear‐sky absorption) by using these new measurements as compared to calculations with the MT_CKD‐2.5 self‐continuum model.
机译:在大多数高红外大气窗口附近太阳辐射被吸收水蒸气自我检测连续体,但有一个缺乏测量在这些窗口。新实验室的测量报告自我之间的连续吸收温度293和472 K和压力从0.015到5 atm在四个近红外窗口1到4毫米之间(10000 - 2500厘米~ (- 1));在更广泛的波数,温度,比以前的测量和压力。他们表明,自我连续在这些窗户通常是一个数量级比的表示连续体广泛应用于气候和天气预测模型。符合当前的理论归因自我检测窗口内连续的翅膀强大的谱线附近的水汽吸收带;符合水二聚体是主要的连续的捐助者。全球平均清楚天空大气吸收太阳辐射的增加了-0.75 W / m ~ 2(约占总数的1%明显的天空通过使用这些新的测量吸收)2.5与MT_CKD相比计算量

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